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Bright dipolar excitons in twisted black phosphorus homostructures

Authors :
Huang, Shenyang
Yu, Boyang
Ma, Yixuan
Pan, Chenghao
Ma, Junwei
Zhou, Yuxuan
Ma, Yaozhenghang
Yang, Ke
Wu, Hua
Lei, Yuchen
Xing, Qiaoxia
Mu, Lei
Zhang, Jiasheng
Mou, Yanlin
Yan, Hugen
Source :
Science386,526-531(2024)
Publication Year :
2024

Abstract

Bright dipolar excitons, which contain electrical dipoles and have high oscillator strength, are an ideal platform for studying correlated quantum phenomena. They usually rely on carrier tunneling between two quantum wells or two layers to hybridize with nondipolar excitons to gain oscillator strength. In this work, we uncovered a new type of bright infrared dipolar exciton by stacking 90{\deg}-twisted black phosphorus (BP) structures. These excitons, inherent to the reconstructed band structure, exhibit high oscillator strength. Most importantly, they inherit the linear polarization from BP, which allows light polarization to be used to select the dipole direction. Moreover, the dipole moment and resonance energy can be widely tuned by the thickness of the BP. Our results demonstrate a useful platform for exploring tunable correlated dipolar excitons.

Details

Database :
arXiv
Journal :
Science386,526-531(2024)
Publication Type :
Report
Accession number :
edsarx.2411.01905
Document Type :
Working Paper
Full Text :
https://doi.org/10.1126/science.adq2977